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首页> 外文期刊>Biochemistry >The relationship between ligand aggregation and G-quadruplex DNA selectivity in a series of 3,4,9,10-perylenetetracarboxylic acid diimides.
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The relationship between ligand aggregation and G-quadruplex DNA selectivity in a series of 3,4,9,10-perylenetetracarboxylic acid diimides.

机译:一系列3,4,9,10-per四羧酸二酰亚胺中配体聚集与G-四链体DNA选择性之间的关系。

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摘要

Human telomeres are comprised of d(TTAGGG) repeats that are capable of forming G-quadruplex DNA structures. Ligands that bind to and stabilize these G-quadruplex DNA structures are potential inhibitors of the cancer cell-associated enzyme telomerase. Other potential biological uses of G-quadruplex targeting ligands have been proposed. One particularly challenging aspect of the contemplated uses of G-quadruplex targeting ligands is their selectivity for G-quadruplex DNA versus double-stranded DNA structures. We have previously reported the observation that two structurally related 3,4,9,10-perylenetetracarboxylic acid diimide-based G-quadruplex DNA ligands, PIPER [N,N'-bis(2-(1-piperidino)ethyl)-3,4,9,10-perylenetetracarboxylic acid diimide] and Tel01 [N,N'-bis(3-(4-morpholino)propyl)-3,4,9,10-perylenetetracarboxylic acid diimide], have different levels of G-quadruplex DNA binding selectivity at pH 7 as determined by absorbance changes in the presence of different DNA structures [Kerwin, S. M., Chen, G., Kern, J. T., and Thomas, P. W. (2002) Bioorg. Med. Chem. Lett. 12, 447-450]. Here we report that the less G-quadruplex DNA selective ligand PIPER can unwind double-stranded, closed circular plasmid DNA, as determined by a topoisomerase I assay. A model for the interaction of Tel01 with the G-quadruplex DNA structure formed by d(TAGGGTTA) was determined from NMR experiments. This model is similar to the previously published model for PIPER bound to the same G-quadruplex DNA and failed to provide a structural basis for the observed increased selectivity of Tel01 interaction with G-quadruplex DNA. In contrast, investigation into the aggregation state of Tel01 and PIPER as well as other 3,4,9,10-perylenetetracarboxylic acid diimide analogues bearing basic side chains demonstrates that ligand aggregation is correlated with G-quadruplex DNA binding selectivity. For all six analogues examined, those ligands that were aggregated at pH 7 in 70 mM potassium phosphate, 100 mM KCl, 1 mM EDTA buffer also demonstrated G-quadruplex DNA binding selectivity under these buffer conditions. Ligands that were not aggregated under these conditions display much lower levels of G-quadruplex DNA selectivity. The aggregation state of these ligands is extremely sensitive to the buffer pH. Tel01, which is aggregated at pH 7, is not aggregated at pH 6.4, where it demonstrates only modest G-quadruplex DNA binding selectivity, and PIPER in pH 8.5 buffer is both aggregated and highly G-quadruplex DNA-selective. To our knowledge, these studies demonstrate the first DNA structure selectivity as achieved through pH-mediated ligand aggregation. The potential impact of these findings on the selectivity of other classes of G-quadruplex DNA ligands is discussed.
机译:人端粒由能够形成G-四链体DNA结构的d(TTAGGG)重复序列组成。结合并稳定这些G-四链体DNA结构的配体是癌细胞相关酶端粒酶的潜在抑制剂。已经提出了G-四链体靶向配体的其他潜在生物学用途。 G-四链体靶向配体的预期用途的一个特别具有挑战性的方面是它们对G-四链体DNA相对于双链DNA结构的选择性。我们先前曾报道过以下观察结果:两个结构相关的基于3,4,9,10-per四甲酸二酰亚胺的G-四链体DNA配体PIPER [N,N'-bis(2-(1-piperidino)ethyl)-3 4,9,10-per四羧酸二酰亚胺]和Tel01 [N,N'-双(3-(4-吗啉代)丙基)-3,4,9,10-per四羧酸二酰亚胺]具有不同的G-四元复合物含量通过在不同DNA结构存在下的吸光度变化确定在pH 7下的DNA结合选择性[Kerwin,SM,Chen,G.,Kern,JT,和Thomas,PW(2002)Bioorg。中化学来吧12,447-450]。在这里,我们报道较少的G-四链体DNA选择性配体PIPER可以解开双链封闭的环状质粒DNA,如拓扑异构酶I分析所确定。通过NMR实验确定Tel01与由d(TAGGGTTA)形成的G-四链体DNA结构相互作用的模型。该模型类似于先前发布的PIPER绑定到相同的G-四链体DNA的模型,并且无法为观察到的Tel01与G-四链体DNA相互作用的增加的选择性提供结构基础。相反,对Tel​​01和PIPER以及其他带有碱性侧链的3,4,9,10-per四甲酸二酰亚胺类似物的聚集状态的研究表明,配体聚集与G-四链体DNA结合选择性相关。对于所检查的所有六个类似物,在pH 7时在70 mM磷酸钾,100 mM KCl,1 mM EDTA缓冲液中聚集的那些配体在这些缓冲液条件下也显示出G-四链体DNA结合选择性。在这些条件下未聚集的配体表现出低得多的G-四链体DNA选择性水平。这些配体的聚集状态对缓冲液pH极为敏感。在pH为7的条件下聚集的Tel01在pH 6.4的条件下不聚集,这表明它仅具有适度的G-四链体DNA结合选择性,而pH 8.5缓冲液中的PIPER既聚集又对G-四链体DNA具有高度选择性。据我们所知,这些研究证明了通过pH介导的配体聚集实现的第一个DNA结构选择性。讨论了这些发现对其他类别的G-四链体DNA配体选择性的潜在影响。

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